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Phoenix dactylifera --- Apomixis --- Genetic polymorphism --- genetic markers --- genotypes --- Gibberellic acid --- phenotypes --- Amplified fragment lenght polymorphism
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Genetic Markers --- Biologische markers. --- Bio-indicatoren. --- Biochemical markers --- Marqueurs biologiques --- Periodicals. --- Périodiques --- Genetic Markers. --- Genetic Marker --- Marker, Genetic --- Chromosome Markers --- DNA Markers --- Markers, DNA --- Markers, Genetic --- Chromosome Marker --- DNA Marker --- Marker, Chromosome --- Marker, DNA --- Markers, Chromosome --- Random Amplified Polymorphic DNA Technique --- Periodicals --- Chemistry --- Life Sciences --- Biochemistry --- Biology
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Oncology. Neoplasms --- Cancer --- Tumor markers --- Biomarkers, Tumor. --- Genetic Markers. --- Neoplasms --- Epidemiology --- Prevention --- Diagnostic use --- epidemiology. --- genetics. --- prevention & control. --- Epidemiology. --- Prevention. --- Diagnostic use. --- Genetic Marker --- Marker, Genetic --- Chromosome Markers --- DNA Markers --- Markers, DNA --- Markers, Genetic --- Chromosome Marker --- DNA Marker --- Marker, Chromosome --- Marker, DNA --- Markers, Chromosome --- Random Amplified Polymorphic DNA Technique --- Periodicals --- Health Sciences --- Clinical Medicine --- Diseases --- General and Others --- Medical Education, Training & Research --- Oncology --- Preventive Medicine --- Genetic Markers --- epidemiology --- genetics --- prevention & control
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Cancer --- Tumor markers --- Genetic Markers. --- Neoplasms --- Epidemiology --- Prevention --- Diagnostic use --- epidemiology. --- genetics. --- prevention & control. --- Epidemiology. --- Prevention. --- Diagnostic use. --- Genetic Marker --- Marker, Genetic --- Chromosome Markers --- DNA Markers --- Markers, DNA --- Markers, Genetic --- Chromosome Marker --- DNA Marker --- Marker, Chromosome --- Marker, DNA --- Markers, Chromosome --- Biological markers (Oncology) --- Cancer markers --- Markers, Tumor --- Tumor associated markers --- Cancers --- Carcinoma --- Malignancy (Cancer) --- Malignant tumors --- Molecular diagnosis --- Random Amplified Polymorphic DNA Technique --- Biochemical markers --- Tumors --- Genetic Markers
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DNA Fingerprinting. --- 614.1 --- DNA Fingerprints --- DNA Profiling --- DNA Typing --- Genetic Fingerprinting --- DNA Fingerprint --- DNA Fingerprintings --- DNA Profilings --- DNA Typings --- Fingerprint, DNA --- Fingerprinting, DNA --- Fingerprinting, Genetic --- Fingerprintings, DNA --- Fingerprintings, Genetic --- Fingerprints, DNA --- Genetic Fingerprintings --- Profiling, DNA --- Typing, DNA --- Typings, DNA --- Paternity --- Polymorphism, Restriction Fragment Length --- Minisatellite Repeats --- Random Amplified Polymorphic DNA Technique --- Databases, Nucleic Acid --- Genetic Privacy --- Genotyping Techniques --- Population. Depopulation --- 614.1 Population. Depopulation --- DNA Fingerprinting
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DNA fingerprinting --- DNA Fingerprinting --- DNA Fingerprinting. --- DNA fingerprints --- DNA identification --- DNA profiles --- DNA profiling --- Genetic fingerprinting --- Genetic fingerprints --- Forensic genetics --- Identification --- DNA Fingerprints --- DNA Profiling --- DNA Typing --- Genetic Fingerprinting --- DNA Fingerprint --- DNA Fingerprintings --- DNA Profilings --- DNA Typings --- Fingerprint, DNA --- Fingerprinting, DNA --- Fingerprinting, Genetic --- Fingerprintings, DNA --- Fingerprintings, Genetic --- Fingerprints, DNA --- Genetic Fingerprintings --- Profiling, DNA --- Typing, DNA --- Typings, DNA --- Paternity --- Polymorphism, Restriction Fragment Length --- Minisatellite Repeats --- Random Amplified Polymorphic DNA Technique --- Databases, Nucleic Acid --- Genetic Privacy --- Genotyping Techniques --- Technique --- DNA fingerprinting. --- DNA --- Forensic Medicine. --- genetics. --- Dna fingerprinting. --- Dna --- Forensic medicine. --- Genetics.
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When DNA profiling was first introduced into the American legal system in 1987, it was heralded as a technology that would revolutionize law enforcement. As an investigative tool, it has lived up to much of this hype—it is regularly used to track down unknown criminals, put murderers and rapists behind bars, and exonerate the innocent. Yet, this promise took ten turbulent years to be fulfilled. In Genetic Witness, Jay D. Aronson uncovers the dramatic early history of DNA profiling that has been obscured by the technique’s recent success. He demonstrates that robust quality control and quality assurance measures were initially nonexistent, interpretation of test results was based more on assumption than empirical evidence, and the technique was susceptible to error at every stage. Most of these issues came to light only through defense challenges to what prosecutors claimed to be an infallible technology. Although this process was fraught with controversy, inefficiency, and personal antagonism, the quality of DNA evidence improved dramatically as a result. Aronson argues, however, that the dream of a perfect identification technology remains unrealized.
DNA Fingerprinting --- Forensic Medicine --- Forensic genetics --- DNA fingerprinting --- Forensic biology --- Genetics --- Medical jurisprudence --- DNA fingerprints --- DNA identification --- DNA profiles --- DNA profiling --- Genetic fingerprinting --- Genetic fingerprints --- Identification --- DNA Fingerprints --- DNA Profiling --- DNA Typing --- Genetic Fingerprinting --- DNA Fingerprint --- DNA Fingerprintings --- DNA Profilings --- DNA Typings --- Fingerprint, DNA --- Fingerprinting, DNA --- Fingerprinting, Genetic --- Fingerprintings, DNA --- Fingerprintings, Genetic --- Fingerprints, DNA --- Genetic Fingerprintings --- Profiling, DNA --- Typing, DNA --- Typings, DNA --- Paternity --- Polymorphism, Restriction Fragment Length --- Minisatellite Repeats --- Random Amplified Polymorphic DNA Technique --- Databases, Nucleic Acid --- Genetic Privacy --- Genotyping Techniques --- Medicine, Forensic --- Medicine, Legal --- Legal Medicine --- Jurisprudence --- Law Enforcement --- Biometric Identification --- DNA Contamination --- legislation & jurisprudence --- history --- History. --- Technique
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The application of new gene technology has made the study of inherited diseases at the molecular level one of today's fastest moving research areas. This textbook reviews the latest breakthroughs and concentrates on the different types of mutation and their analysis by both classical methods and the newest DNA mapping techniques. Students will find here the information they need to complement lecture courses.
Human genetics --- Molecular biology --- Human gene mapping --- Genetic disorders --- Genetic Diseases, Inborn --- Genetic Markers --- Chromosome Mapping --- genetics --- etiology --- Chromosome Mapping. --- Genetic Markers. --- 577.27 --- Molecular genetics --- #ABIB:aimm --- Genetics --- Human chromosome mapping --- Human genome mapping --- Mapping, Human gene --- Gene mapping --- Congenital diseases --- Disorders, Genetic --- Disorders, Inherited --- Genetic diseases --- Hereditary diseases --- Inherited diseases --- Diseases --- Medical genetics --- Genetic Marker --- Marker, Genetic --- Chromosome Markers --- DNA Markers --- Markers, DNA --- Markers, Genetic --- Chromosome Marker --- DNA Marker --- Marker, Chromosome --- Marker, DNA --- Markers, Chromosome --- Random Amplified Polymorphic DNA Technique --- Genome Mapping --- Gene Mapping --- Linkage Mapping --- Chromosome Mappings --- Gene Mappings --- Genome Mappings --- Linkage Mappings --- Mapping, Chromosome --- Mapping, Gene --- Mapping, Genome --- Mapping, Linkage --- Mappings, Chromosome --- Mappings, Gene --- Mappings, Genome --- Mappings, Linkage --- Cytogenetics --- Cytogenetic Analysis --- Gene Order --- Synteny --- etiology. --- genetics. --- Molecular bases of immunity. Molecular immunology --- Genetic disorders. --- Human gene mapping. --- Molecular genetics. --- Genetic Marker. --- Hereditary Diseases --- 577.27 Molecular bases of immunity. Molecular immunology --- Etiology. --- Genetic Diseases, Inborn - genetics --- Genetic Diseases, Inborn - etiology
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ADN-empreintes génétiques --- DNA fingerprinting --- DNA fingerprints --- DNA identification --- DNA profiles --- DNA profiling --- DNA-vingerafdrukken --- Empreintes ADN --- Empreintes génétiques --- Genetic fingerprinting --- Genetic fingerprints --- Identification génétique --- DNA Fingerprinting. --- Forensic Medicine --- Jurisprudence. --- Forensic genetics --- Identification --- Constitutional Law --- Court Decision --- Law --- Legal Aspects --- Legal Obligations --- Legal Status --- State Interest --- Litigation --- Medical Jurisprudence --- Aspect, Legal --- Aspects, Legal --- Constitutional Laws --- Court Decisions --- Decision, Court --- Decisions, Court --- Interest, State --- Interests, State --- Jurisprudence, Medical --- Law, Constitutional --- Laws --- Laws, Constitutional --- Legal Aspect --- Legal Obligation --- Litigations --- Obligation, Legal --- Obligations, Legal --- State Interests --- Status, Legal --- Defamation --- Lawyers --- DNA Fingerprints --- DNA Profiling --- DNA Typing --- Genetic Fingerprinting --- DNA Fingerprint --- DNA Fingerprintings --- DNA Profilings --- DNA Typings --- Fingerprint, DNA --- Fingerprinting, DNA --- Fingerprinting, Genetic --- Fingerprintings, DNA --- Fingerprintings, Genetic --- Fingerprints, DNA --- Genetic Fingerprintings --- Profiling, DNA --- Typing, DNA --- Typings, DNA --- Paternity --- Polymorphism, Restriction Fragment Length --- Minisatellite Repeats --- Random Amplified Polymorphic DNA Technique --- Databases, Nucleic Acid --- Genetic Privacy --- Genotyping Techniques --- methods. --- Technique --- Australia. --- Canton and Enderbury Islands --- Christmas Island --- Christmas Island (Australia) --- DNA Fingerprinting --- Jurisprudence --- methods --- DNA fingerprints.
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DNA typing has revolutionized criminal investigations and has become a powerful tool in the identification of individuals in criminal and paternity cases. Forensic DNA Biology: A Laboratory Manual is comprised of up-to-date and practical experiments and step-by-step instructions on how to perform DNA analysis, including pipetting, microscopy and hair analysis, presumptive testing of body fluids and human DNA typing. Modern DNA typing techniques are provided, reflecting real life, where not all institutions and crime labs can afford the same equipment and software. Real case studies w
DNA -- Synthesis. --- DNA Fingerprinting. --- Forensic genetics. --- Forensic Genetics - methods. --- Forensic genetics - Technique. --- Polymerase Chain Reaction. --- Sequence Analysis, DNA - methods. --- Forensic genetics --- DNA Fingerprinting --- Forensic Genetics --- Sequence Analysis, DNA --- DNA fingerprints --- DNA identification --- DNA profiles --- DNA profiling --- Genetic fingerprinting --- Genetic fingerprints --- DNA fingerprinting. --- Technique. --- Identification --- Technique --- Polymerase chain reaction. --- Polymerase Chain Reaction --- methods --- Anchored Polymerase Chain Reaction --- Inverse Polymerase Chain Reaction --- Nested Polymerase Chain Reaction --- Anchored PCR --- Inverse PCR --- Nested PCR --- PCR --- PCR, Anchored --- PCR, Inverse --- PCR, Nested --- Polymerase Chain Reactions --- Reaction, Polymerase Chain --- Reactions, Polymerase Chain --- Ligase Chain Reaction --- DNA Fingerprints --- DNA Profiling --- DNA Typing --- Genetic Fingerprinting --- DNA Fingerprint --- DNA Fingerprintings --- DNA Profilings --- DNA Typings --- Fingerprint, DNA --- Fingerprinting, DNA --- Fingerprinting, Genetic --- Fingerprintings, DNA --- Fingerprintings, Genetic --- Fingerprints, DNA --- Genetic Fingerprintings --- Profiling, DNA --- Typing, DNA --- Typings, DNA --- Paternity --- Polymorphism, Restriction Fragment Length --- Minisatellite Repeats --- Random Amplified Polymorphic DNA Technique --- Databases, Nucleic Acid --- Genetic Privacy --- Genotyping Techniques --- Chain reaction, Polymerase --- PCR (Biochemistry) --- Polymerization --- DNA polymerases
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